Department of Chemistry, Southern Methodist University, Dallas, Texas 75275-0314, United States.
Department of Chemistry, Colorado School of Mines, Golden, Colorado 80401, United States.
Chem Rev. 2024 Aug 28;124(16):9225-9375. doi: 10.1021/acs.chemrev.3c00892. Epub 2024 Aug 13.
Reactive oxygen and nitrogen species are small reactive molecules derived from elements in the air─oxygen and nitrogen. They are produced in biological systems to mediate fundamental aspects of cellular signaling but must be very tightly balanced to prevent indiscriminate damage to biological molecules. Small molecule probes can transmute the specific nature of each reactive oxygen and nitrogen species into an observable luminescent signal (or even an acoustic wave) to offer sensitive and selective imaging in living cells and whole animals. This review focuses specifically on small molecule probes for superoxide, hydrogen peroxide, hypochlorite, nitric oxide, and peroxynitrite that provide a luminescent or photoacoustic signal. Important background information on general photophysical phenomena, common probe designs, mechanisms, and imaging modalities will be provided, and then, probes for each analyte will be thoroughly evaluated. A discussion of the successes of the field will be presented, followed by recommendations for improvement and a future outlook of emerging trends. Our objectives are to provide an informative, useful, and thorough field guide to small molecule probes for reactive oxygen and nitrogen species as well as important context to compare the ecosystem of chemistries and molecular scaffolds that has manifested within the field.
活性氧和氮物种是由空气中的元素氧和氮衍生而来的小反应性分子。它们在生物系统中产生,以介导细胞信号转导的基本方面,但必须非常紧密地平衡,以防止对生物分子的无差别损伤。小分子探针可以将每种活性氧和氮物种的特定性质转化为可观察的发光信号(甚至声波),从而在活细胞和整个动物中提供敏感和选择性的成像。本综述专门关注提供发光或光声信号的超氧阴离子、过氧化氢、次氯酸根、一氧化氮和过氧亚硝酸盐的小分子探针。将提供有关一般光物理现象、常见探针设计、机制和成像方式的重要背景信息,然后彻底评估每种分析物的探针。将介绍该领域的成功案例,并提出改进建议和对新兴趋势的未来展望。我们的目标是为活性氧和氮物种的小分子探针提供一个信息丰富、有用和全面的领域指南,并提供比较该领域内出现的化学和分子支架生态系统的重要背景。